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首页> 外文期刊>Latin American Journal of Solids and Structures >Experimental and numerical modeling of horizontally-bent buried pipelines crossing fault slip
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Experimental and numerical modeling of horizontally-bent buried pipelines crossing fault slip

机译:水平弯管穿越断层滑移的试验与数值模拟

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Abstract The behavior and response of pipelines subjected to slip fault movement is studied by numerical simulations as well as experimental setup. A finite element modeling is also developed via ABAQUS software. In this study, an artificial accelerogram is applied to the system and matched against the response spectrum according to the standard No. 2800 (Iranian code of practice for seismic resistant design of buildings, 2014). Three different pipe nominal sizes and thicknesses (1 ?”, 2” and 4”) are considered in the experiments on the shaking table. According to the results, plastic hinge as well as the extremum stress and strain is formed in the fixed soil wedge and at locations close to the fault line. Further, as the pipe D/t ratio increases, the plastic hinge forms further away from the fault line. According to the results, the pipe-soil strain ratio (εp/s) has lower values at larger pipe diameters. Also, the axial strains would be greater for the systems with higher (εp/s) ratios.
机译:摘要通过数值模拟和实验装置研究了滑移故障下管道的行为和响应。还通过ABAQUS软件开发了有限元建模。在这项研究中,将人造加速度图应用于系统,并根据2800号标准(伊朗建筑抗震设计操作规范,2014年)与响应谱进行匹配。在振动台上的实验中考虑了三种不同的管道公称尺寸和厚度(1?”,2”和4”)。根据结果​​,在固定的土楔中和靠近断层线的位置形成了塑料铰链以及极值应力和应变。此外,随着管道的D / t比增加,塑料铰链的位置离断层线越来越远。根据结果​​,管径比(εp/ s)在较大的管径下具有较低的值。同样,对于具有更高(εp/ s)比的系统,轴向应变将更大。

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